Computational Modeling and Nanoscale Processing Unit, National Institute of Food Technology, Entrepreneurship and Management - Thanjavur, Ministry of Food Processing Industries, Government of India, 613005, Tamil Nadu, India.
Computational Modeling and Nanoscale Processing Unit, National Institute of Food Technology, Entrepreneurship and Management - Thanjavur, Ministry of Food Processing Industries, Government of India, 613005, Tamil Nadu, India.
Chemosphere. 2022 Jul;299:134361. doi: 10.1016/j.chemosphere.2022.134361. Epub 2022 Mar 21.
Globally, the valorization of fish biowaste as a feedstock to recover valuable components is an emerging research and commercial interest area to achieve the SDG goals by 2030. Fish waste-derived biomolecules are increasingly finding diverse applications in food and other biotechnological fields due to their excellent chemical, structural and functional properties. The focus of this review is to highlight the conventional valorization routes and recent advancements in extraction technologies for resource recovery applications, primarily focusing on green processes. Biointensified processes involving ultrasound, microwave, sub- and supercritical fluids, pulsed electric field, high-pressure processing, and cold plasma are extensively explored as sustainable technologies for valorizing fish discards and found numerous applications in the production of functional and commercially important biomaterials. With challenges in recovering intracellular bioactive compounds, selectivity, and energy requirement concerns, conventional approaches are being relooked continuously in the quest for process intensification and sustainable production practices. Nonetheless, in the context of 'zero waste' and 'biorefinery for high-value compounds', there is immense scope for technological upgradation in these emerging alternative approaches. This work details such attempts, providing insights into the immense untapped potential in this sector.
从全球范围来看,将鱼类生物废料作为一种回收有价值成分的原料进行增值利用,是实现 2030 年可持续发展目标的一个新兴研究和商业领域。由于具有优异的化学、结构和功能特性,源自鱼类废弃物的生物分子在食品和其他生物技术领域的应用日益广泛。本综述的重点是强调传统的增值途径和最新的提取技术进展,主要集中在绿色工艺上。生物强化工艺,如超声、微波、亚临界和超临界流体、脉冲电场、高压处理和冷等离子体,被广泛探索作为增值利用鱼类废弃物的可持续技术,并在功能性和商业上重要的生物材料生产中得到了广泛应用。然而,在“零废物”和“高价值化合物的生物炼制”的背景下,为了实现工艺强化和可持续生产实践,人们不断重新审视传统方法。尽管如此,在这些新兴替代方法中,仍有巨大的技术升级空间。本文详细介绍了这些尝试,为该领域的巨大未开发潜力提供了深入的见解。